Abstract:
A secondary solid waste container for solid waste of an analyzer is disclosed. The secondary solid waste container comprises side walls and an impact absorbing member. The side walls comprise an upper end and a lower end. The impact absorbing member is connected to the side walls such that the impact absorbing member extends between the side walls and is spaced apart from the lower end with respect to a direction from the lower end to the upper end. The impact absorbing member is configured to absorb an impact from solid waste of the analyzer. An analyzer and a method for removing solid waste of an analyzer are also disclosed.
Abstract:
A tube rotator for rotating test tubes arranged in a tube rack as well as a system and process for reading information of machine-readable labels of the test tubes are disclosed. The tube rotator may comprise a pivoted lever having two lever arms, a friction wheel rotatably fixed to one lever arm and arranged to be brought in or out of contact with at least one test tube for rotating the test tube by friction. A first actuator may be rotatably coupled to the friction wheel, and a pretensioner which is capable of generating a pretensioning force may act on the lever for pivoting the lever in one pivoting direction. An eccentric may be rotatably fixed with respect to the base and arranged to roll off the other lever arm for pivoting the lever in another pivoting direction. A second actuator may be rotatably coupled to the eccentric.
Abstract:
A secondary solid waste container for solid waste of an analyzer is disclosed. The secondary solid waste container comprises side walls and an impact absorbing member. The side walls comprise an upper end and a lower end. The impact absorbing member is connected to the side walls such that the impact absorbing member extends between the side walls and is spaced apart from the lower end with respect to a direction from the lower end to the upper end. The impact absorbing member is configured to absorb an impact from solid waste of the analyzer. An analyzer and a method for removing solid waste of an analyzer are also disclosed.
Abstract:
A switch for a conveying line for transporting a laboratory diagnostic vessel carrier is presented. The conveying line comprises a first line portion and a second line portion. The switch comprises a curved first guiding surface and a second guiding surface. The switch is moveable between a first position, in which the laboratory diagnostic vessel carrier is transportable along the curved first guiding surface from the first line portion to the second line portion, and a second position, in which the laboratory diagnostic vessel carrier is further transportable along the second guiding surface on the first line portion. A switch assembly and a conveying line are also disclosed.
Abstract:
A device for loading an automated analysis system is presented. The device comprises a chassis, a movable loading element movably coupled to the chassis and configured to move between a first and a second position, a holding structure, the holding structure being floatingly coupled to the movable loading element, the holding structure being configured to hold a receptacle for material to be loaded into the automated analysis system, a first alignment element attached to the chassis and a second alignment element attached to the holding structure. The first alignment element is configured to engage with the second alignment element to align the holding structure in a predetermined position relative to the chassis when the movable loading element is in the second position.
Abstract:
A switch for a conveying line for transporting a laboratory diagnostic vessel carrier is presented. The conveying line comprises a first line portion and a second line portion. The switch comprises a curved first guiding surface and a second guiding surface. The switch is moveable between a first position, in which the laboratory diagnostic vessel carrier is transportable along the curved first guiding surface from the first line portion to the second line portion, and a second position, in which the laboratory diagnostic vessel carrier is further transportable along the second guiding surface on the first line portion. A switch assembly and a conveying line are also disclosed.
Abstract:
A sample handling device is presented. The sample handling device comprises at least one magnetic positioning device for magnetically holding a carrier configured for carrying at least one vessel in the sample handling device. A sample identification device is also presented. The sample identification device comprises at least one of the above sample handling device and at least one reader for reading at least one identifier attached to the vessel carried by the carrier. A system for sample handling, a diagnostics device for identifying at least one property of a plurality of samples and a method for handling a sample are also presented.
Abstract:
A sample handling device is presented. The sample handling device comprises at least one magnetic positioning device for magnetically holding a carrier configured for carrying at least one vessel in the sample handling device. A sample identification device is also presented. The sample identification device comprises at least one of the above sample handling device and at least one reader for reading at least one identifier attached to the vessel carried by the carrier. A system for sample handling, a diagnostics device for identifying at least one property of a plurality of samples and a method for handling a sample are also presented.
Abstract:
A device for loading an automated analysis system is presented. The device comprises a chassis, a movable loading element movably coupled to the chassis and configured to move between a first and a second position, a holding structure, the holding structure being floatingly coupled to the movable loading element, the holding structure being configured to hold a receptacle for material to be loaded into the automated analysis system, a first alignment element attached to the chassis and a second alignment element attached to the holding structure. The first alignment element is configured to engage with the second alignment element to align the holding structure in a predetermined position relative to the chassis when the movable loading element is in the second position.